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chromosome scaffold
相关语句
  染色体骨架
     STUDIED ON THE RELATIONSHIP BETWEEN CHROMOSOME SCAFFOLD AND CORE IN COMMON WHEAT
     小麦染色体骨架与轴关系的研究
     The chromosome scaffold of rat ( Rattus norvegicus var. albulus ) was studied by the combination of TEM, cytochemical EM, RNase gold complexes labeling and Ag staining technologies.
     本文应用TEM技术、电镜细胞化学、胶体金标记和银染技术结合研究了大鼠(Ratusnorvegicusvar.albulus)骨髓细胞染色体骨架
短句来源
     The isolated or intact metaphase chromosome scaffold of BK (Bovine Kidney) cell has been studied by using several techniques, such as isolated chromosome scaffold TEM, ultra thin-sectioning cytochemical EM, RNase-gold complexes labeling and Ag-staining.
     本文应用分离染色体骨架的TEM技术、超薄切片甩镜细胞化学、RNase一胶体金标记和银染电镜技术结合研究了牛肾(BK)细胞的分离染色体骨架和完整的中期染色体骨架.
     It indicated that Ag staining protein was nonhistone protein of chromosome scaffold and protein components of RNP, that is, nonhistone protein observed, protein components of RNP and Ag staining protein was the same.
     说明RNP中的蛋白质含有银染的酸性蛋白,即所观察到的染色体骨架非组蛋白、RNP中的蛋白部分、银染蛋白三者是一致的。
短句来源
     The result of this paper suggeste that silver-stained chromosome scaffold proteins may come from the condensed chromatin, nuclear matrix and nucleolus of interphase nucleus.
     本文结果提示,构成染色体骨架的嗜银蛋白可能来自间期细胞核的染色质、核基质和核仁。
短句来源
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  “chromosome scaffold”译为未确定词的双语例句
     It is certain from these results that the granules in the coromosomes represent the NHPs that constitute into chromosome scaffold.
     结果显示,在透射电镜下观察到中期细胞中,染色体横切面和残存的细胞质上都可见分布较多的胶体金颗粒。
短句来源
     The above results showed that actin is a constituent of the nuclear matrix and chromosome scaffold of P. polycephalum.
     上述结果证明,肌动蛋白是多头绒泡菌细胞核和染色体及其骨架的组成成分。
短句来源
  相似匹配句对
     STADIES ON THE CHROMOSOME NHP SCAFFOLD
     关于染色体非组蛋白骨架的研究
     3 chromosome.
     我国科学家完成了 3号染色体上 30 0 0万个bp的测序任务。
短句来源
     Supernumerary Chromosome
     B染色体
短句来源
     STUDIED ON THE RELATIONSHIP BETWEEN CHROMOSOME SCAFFOLD AND CORE IN COMMON WHEAT
     小麦染色体骨架与轴关系的研究
     Bulk Translation for scaffold
     脚手架整体平移技术
短句来源
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  chromosome scaffold
Here we present a modified version of the chromosome scaffold model to describe chromosome structure and behavior through the mitotic and meiotic cell cycles.
      
The chromosome scaffold model in which loops of chromatin are attached to a central, coiled chromosome core (scaffold) is the current paradigm for chromosome structure.
      
Despite the progress made toward the understanding of the genome organization and expression, few changes have been reported in the chromosome scaffold of malignant cells associated with the cancer phenotype.
      
In order to identify novel abundant proteins with a potential involvement in these processes, we initiated a proteomic screen of the chromosome scaffold fraction.
      
Novel components of human mitotic chromosomes identified by proteomic analysis of the chromosome scaffold fraction
      
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The scaffod structures were found in common wheat interphase condensed chromatins by using electroninieroscope, cytochemistry, image analysis and electrophoresis techniqnes and were called chromatin scaffold .it was the result that in mitotic telophase, after some nonhistone proteins (NHPs) in chromosome scaffolds seperated fromchromosomes to pericipate in the form of nuclear matrixs .the remnant NHks still existed in condense chromatins. Thestructufal cnaracteristics were the coexistence...

The scaffod structures were found in common wheat interphase condensed chromatins by using electroninieroscope, cytochemistry, image analysis and electrophoresis techniqnes and were called chromatin scaffold .it was the result that in mitotic telophase, after some nonhistone proteins (NHPs) in chromosome scaffolds seperated fromchromosomes to pericipate in the form of nuclear matrixs .the remnant NHks still existed in condense chromatins. Thestructufal cnaracteristics were the coexistence of graules and fibrous networks. It was composed about 20 proteins,among them,Ann and ATPase were the structural components. There were colsely relations among chromatin scaffold,nucalear matrix and chromosome scaffold. The discovery of chromatin saffold and the retaionships among the three parts were introduod in this peper.

应用电镜、细胞化学、图像分析和电泳等实验技术,我们发现小麦间期集缩染色质中存在着骨架结构,并称之为染色质骨架.它是有丝分裂末期染色体骨架上的一部分非组蛋白脱离染色体参与核基质的形成后,残留的非组蛋白仍然存在于集缩染色质中的结果;其结构特点是颗粒与纤维网络并存;由二十来种非组蛋白组成,其中包括队动蛋白和ATPase。它与间期核基质和中期染色体骨架保持着非常密切的联系。本文对其发现过程和三者之间的相互关系进行了概述。

Nucleic acid-and histone-depleted wheat chromosomes show their basic shapes underelectron microscope. The structure of metaphase chromosomes are compact. The two sister chromatids can be distinguished in prophase and late-metaphase chromosomes, however, there are much scaffold proteins interconnected between them. Centromeres are associated with chromatids. According to these results, it can be indicated that there really exista nonhistone protein-composed, silver-argentophilic scaffold structure in chromosomes.Scaffold...

Nucleic acid-and histone-depleted wheat chromosomes show their basic shapes underelectron microscope. The structure of metaphase chromosomes are compact. The two sister chromatids can be distinguished in prophase and late-metaphase chromosomes, however, there are much scaffold proteins interconnected between them. Centromeres are associated with chromatids. According to these results, it can be indicated that there really exista nonhistone protein-composed, silver-argentophilic scaffold structure in chromosomes.Scaffold forms a network structure in chromosomes and takes key part in maintaining themorphological characteristics of chromosomes and in chromosome condensation and package.The centromere is part of the chromosome scaffold.

去除核酸和组蛋白的小麦染色体在电镜下仍呈现出其基本形态.中期染色体结构致密,前期和晚中期染色体能区分出其两条姊妹染色单体,不过二者之间仍有很多物质相互交联,着丝粒连接着染色单体.由此我们认为:染色体中确实也存在着一种由非组蛋白蛋白质构成的、嗜银性很强的骨架结构,呈网络分布,它在维持染色体的形态以及在染色体的集缩包装中起重要作用.着丝粒是骨架的一部分.

The morphologic characteristics of the protein scaffold of HeLa metaphase chromosome and dinoflagellatechromosomes were visualized directly by resinless section electron microscopy. The protein scaffold preservesthe shape and size of the chromosome. The protein scaffold is not an axis but a network spread over whole chro-mosome. Our experiment results demonstrated that DGD embedment-embedment free section electron mi-croscopy is an powerful tool in the ultrastructural study of chromosome scaffold.

我们将染色体骨架制备方法与非树脂包埋去包埋剂超薄切片电镜方法结合起来,直观地显示染色体骨架的内部结构,分离的染色体骨架保持了与正常染色体对应的形状和大小,染色体骨架是一贯穿于整个染色体中的纤维网架结构,而不是位于染色体核心的轴,实验结果表明,DGD包埋去包埋剂超薄切片电镜方法是研究染色体骨架超微结构的有力手段。

 
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